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质体小球是叶绿体的脂蛋白亚区室,与类囊体膜永久相连并含有生物合成酶。

Plastoglobules are lipoprotein subcompartments of the chloroplast that are permanently coupled to thylakoid membranes and contain biosynthetic enzymes.

作者信息

Austin Jotham R, Frost Elizabeth, Vidi Pierre-Alexandre, Kessler Felix, Staehelin L Andrew

机构信息

Department of Molecular, Cellular, and Developmental Biology, University of Colorado, Boulder, Colorado 80309-0347, USA.

出版信息

Plant Cell. 2006 Jul;18(7):1693-703. doi: 10.1105/tpc.105.039859. Epub 2006 May 26.

DOI:10.1105/tpc.105.039859
PMID:16731586
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1488921/
Abstract

Plastoglobules are lipoprotein particles inside chloroplasts. Their numbers have been shown to increase during the upregulation of plastid lipid metabolism in response to oxidative stress and during senescence. In this study, we used state-of-the-art high-pressure freezing/freeze-substitution methods combined with electron tomography as well as freeze-etch electron microscopy to characterize the structure and spatial relationship of plastoglobules to thylakoid membranes in developing, mature, and senescing chloroplasts. We demonstrate that plastoglobules are attached to thylakoids through a half-lipid bilayer that surrounds the globule contents and is continuous with the stroma-side leaflet of the thylakoid membrane. During oxidative stress and senescence, plastoglobules form linkage groups that are attached to each other and remain continuous with the thylakoid membrane by extensions of the half-lipid bilayer. Using three-dimensional tomography combined with immunolabeling techniques, we show that the plastoglobules contain the enzyme tocopherol cyclase (VTE1) and that this enzyme extends across the surface monolayer into the interior of the plastoglobules. These findings demonstrate that plastoglobules function as both lipid biosynthesis and storage subcompartments of thylakoid membranes. The permanent structural coupling between plastoglobules and thylakoid membranes suggests that the lipid molecules contained in the plastoglobule cores (carotenoids, plastoquinone, and tocopherol [vitamin E]) are in a dynamic equilibrium with those located in the thylakoid membranes.

摘要

质体小球是叶绿体内部的脂蛋白颗粒。研究表明,在响应氧化应激的质体脂质代谢上调过程以及衰老过程中,其数量会增加。在本研究中,我们使用了最先进的高压冷冻/冷冻置换方法,并结合电子断层扫描以及冷冻蚀刻电子显微镜,来表征发育中的、成熟的和衰老的叶绿体中质体小球与类囊体膜的结构和空间关系。我们证明,质体小球通过围绕小球内容物的半脂质双层附着在类囊体上,该半脂质双层与类囊体膜的基质侧小叶连续。在氧化应激和衰老过程中,质体小球形成连接基团,它们相互连接,并通过半脂质双层的延伸与类囊体膜保持连续。使用三维断层扫描结合免疫标记技术,我们表明质体小球含有生育酚环化酶(VTE1),并且该酶穿过表面单层延伸到质体小球内部。这些发现表明,质体小球既作为类囊体膜的脂质生物合成亚区室,也作为脂质储存亚区室发挥作用。质体小球与类囊体膜之间的永久结构耦合表明,质体小球核心中所含的脂质分子(类胡萝卜素、质体醌和生育酚[维生素E])与类囊体膜中的脂质分子处于动态平衡。

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Die and let live: leaf senescence contributes to plant survival under drought stress.舍弃自身以换取生机:叶片衰老有助于植物在干旱胁迫下存活。
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Plant Physiol. 2006 Mar;140(3):984-97. doi: 10.1104/pp.105.076083. Epub 2006 Feb 3.